Southern Crop Protection and Food Research Centre, Agriculture and Agri-Food Canada, London, Ontario, Canada.
PLoS Pathog. 2010 Jun 24;6(6):e1000962. doi: 10.1371/journal.ppat.1000962.
Intercellular transport of viruses through cytoplasmic connections, termed plasmodesmata (PD), is essential for systemic infection in plants by viruses. Previous genetic and ultrastructural data revealed that the potyvirus cyclindrical inclusion (CI) protein is directly involved in cell-to-cell movement, likely through the formation of conical structures anchored to and extended through PD. In this study, we demonstrate that plasmodesmatal localization of CI in N. benthamiana leaf cells is modulated by the recently discovered potyviral protein, P3N-PIPO, in a CI:P3N-PIPO ratio-dependent manner. We show that P3N-PIPO is a PD-located protein that physically interacts with CI in planta. The early secretory pathway, rather than the actomyosin motility system, is required for the delivery of P3N-PIPO and CI to PD. Moreover, CI mutations that disrupt virus cell-to-cell movement compromise PD-localization capacity. These data suggest that the CI and P3N-PIPO complex coordinates the formation of PD-associated structures that facilitate the intercellular movement of potyviruses in infected plants.
病毒通过细胞质连接(称为胞间连丝)在细胞间的运输对于病毒在植物中的系统感染至关重要。先前的遗传和超微结构数据表明,马铃薯 Y 病毒的圆柱形内含体(CI)蛋白直接参与细胞间运动,可能通过与胞间连丝锚定并延伸的锥形结构形成。在这项研究中,我们证明了在 N. benthamiana 叶细胞中,胞间连丝定位的 CI 受最近发现的马铃薯 Y 病毒蛋白 P3N-PIPO 以 CI:P3N-PIPO 比例依赖的方式调节。我们表明,P3N-PIPO 是一种 PD 定位蛋白,它在植物体内与 CI 发生物理相互作用。早期分泌途径,而不是肌动球蛋白运动系统,是将 P3N-PIPO 和 CI 递送至 PD 所必需的。此外,破坏病毒细胞间运动的 CI 突变会损害 PD 定位能力。这些数据表明,CI 和 P3N-PIPO 复合物协调了 PD 相关结构的形成,这些结构有助于感染植物中马铃薯 Y 病毒的细胞间运动。